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NCERT Exemplar · Q5

Q.Which of the following combinations should be selected for better tuning of an LCR circuit used for communication?

(a) R = 20 Ω, L = 1.5 H, C = 35µF.
(b) R = 25 Ω, L = 2.5 H, C = 45µF.
(c) R = 15 Ω, L = 3.5 H, C = 30µF.
(d) R = 25 Ω, L = 1.5 H, C = 45µF.
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Better tuning means a sharper, more selective resonance — quantified by a higher quality factor Q=1RL/CQ=\dfrac{1}{R}\sqrt{L/C}. Computing QQ for all four given combinations shows option (c) (R=15 ΩR=15\ \Omega, L=3.5 HL=3.5\ \text{H}, C=30 μFC=30\ \mu\text{F}) gives by far the largest Q≈22.8Q\approx 22.8, and is therefore the best choice.

Why tuning quality depends on Q

An LCR circuit used for communication acts as a bandpass filter: it must respond strongly to one particular carrier frequency and reject others nearby. This selectivity is measured by the quality factor of the series resonant circuit:

Q=ω0LR=1RLCQ=\frac{\omega_0 L}{R}=\frac{1}{R}\sqrt{\frac{L}{C}}

A larger QQ means a narrower, taller resonance curve — better tuning. From the formula, QQ is increased by a smaller RR and a larger L/CL/C ratio (large LL, small CC).

Evaluating each option

(a) R=20 ΩR=20\ \Omega, L=1.5 HL=1.5\ \text{H}, C=35 μFC=35\ \mu\text{F}:

Q=1201.535×10−6=12042857=207.020≈10.4Q=\frac{1}{20}\sqrt{\frac{1.5}{35\times10^{-6}}}=\frac{1}{20}\sqrt{42857}=\frac{207.0}{20}\approx 10.4

(b) R=25 ΩR=25\ \Omega, L=2.5 HL=2.5\ \text{H}, C=45 μFC=45\ \mu\text{F}:

Q=1252.545×10−6=12555556=235.725≈9.4Q=\frac{1}{25}\sqrt{\frac{2.5}{45\times10^{-6}}}=\frac{1}{25}\sqrt{55556}=\frac{235.7}{25}\approx 9.4

(c) R=15 ΩR=15\ \Omega, L=3.5 HL=3.5\ \text{H}, C=30 μFC=30\ \mu\text{F}:

Q=1153.530×10−6=115116667=341.615≈22.8Q=\frac{1}{15}\sqrt{\frac{3.5}{30\times10^{-6}}}=\frac{1}{15}\sqrt{116667}=\frac{341.6}{15}\approx 22.8

(d) R=25 ΩR=25\ \Omega, L=1.5 HL=1.5\ \text{H}, C=45 μFC=45\ \mu\text{F}:

Q=1251.545×10−6=12533333=182.625≈7.3Q=\frac{1}{25}\sqrt{\frac{1.5}{45\times10^{-6}}}=\frac{1}{25}\sqrt{33333}=\frac{182.6}{25}\approx 7.3

Comparing the four

OptionRR (Ω\Omega)LL (H)CC (μ\muF)QQ
(a)201.535≈10.4\approx 10.4

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